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在缺乏硫酸化或同时缺乏硫酸化和非硫酸化半乳糖脂的小鼠中,髓鞘蛋白组成发生改变。

Myelin protein composition is altered in mice lacking either sulfated or both sulfated and non-sulfated galactolipids.

机构信息

Departments of Neuroscience, University of Connecticut Health Center, Farmington, Connecticut, USA.

出版信息

J Neurochem. 2010 Feb;112(3):599-610. doi: 10.1111/j.1471-4159.2009.06464.x. Epub 2009 Oct 29.

Abstract

Myelin is highly enriched in galactocerebroside (GalCer) and its sulfated form sulfatide. Mice, unable to synthesize GalCer and sulfatide (CGT(null)) or sulfatide alone (CST(null)), exhibit disorganized paranodal structures and progressive dysmyelination. To obtain insights into the molecular mechanisms underlying these defects, we examined myelin composition of these mutants by two-dimensional differential fluorescence intensity gel electrophoresis proteomic approach and immunoblotting. We identified several proteins whose expressions were significantly altered in these mutants. These proteins are known to regulate cytoskeletal dynamics, energy metabolism, vesicular trafficking or adhesion, suggesting a disruption in these physiological processes in the absence of myelin galactolipids. Further analysis of one of these proteins, nucleotide diphosphate kinase (NDK)/Nm23, showed that it was reduced in myelin of CGT(null) and increased in CST(null), but not in whole brain homogenate. Immunostaining showed an increase in its expression in the cell bodies of CGT(null)- and a decrease in CST(null)-oligodenrocytes, together leading to the hypothesis that transport of NDK/Nm23 from oligodenrocyte cell bodies into myelin may be differentially dysregulated in the absence of these galactolipids. This study provides new insights into the changes that occur in the composition/distribution of myelin proteins in mice lacking either unsulfated and/or sulfated galactolipids and reinforces the role of these lipids in intracellular trafficking.

摘要

髓鞘富含半乳糖脑苷脂 (GalCer) 和其硫酸化形式硫酸脑苷脂。不能合成 GalCer 和硫酸脑苷脂(CGT(null))或硫酸脑苷脂(CST(null))的小鼠,表现出排列紊乱的结旁结构和进行性脱髓鞘。为了深入了解这些缺陷的分子机制,我们通过二维差异荧光强度凝胶电泳蛋白质组学方法和免疫印迹分析,检查了这些突变体的髓鞘组成。我们鉴定了几种表达明显改变的蛋白质。这些蛋白质已知可调节细胞骨架动力学、能量代谢、囊泡运输或黏附,表明在没有髓鞘半乳糖脂的情况下,这些生理过程发生了中断。对其中一种蛋白质核苷酸二磷酸激酶 (NDK)/Nm23 的进一步分析表明,它在 CGT(null)的髓鞘中减少,在 CST(null)中增加,但不在整个大脑匀浆中增加。免疫染色显示其在 CGT(null)少突胶质细胞的细胞体中的表达增加,在 CST(null)中的表达减少,这表明 NDK/Nm23 从少突胶质细胞细胞体向髓鞘的运输可能在缺乏这些半乳糖脂的情况下受到不同程度的调节。这项研究为缺乏未硫酸化和/或硫酸化半乳糖脂的小鼠髓鞘蛋白组成/分布的变化提供了新的见解,并加强了这些脂质在细胞内运输中的作用。

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